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Atomic Layered sentence examples within atomic layered structure
By characterization of the prepared GO and various control experiments, the higher efficiency of GO than conventional catalysts was attributed to its unique atomic layered structure and suitable acidity.
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The effect of H position in L10FePd magnetic equiatomic layered structure on electron-phonon interactions is studied via ab initio pseudopotentials density functional approach in the general gradient approximation.
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Atomic Layered sentence examples within atomic layered material
The invention of graphene, as a two-dimensional (2D) atomic layered material, has created enormous scientific revolutions in materials science.
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High pressure and high temperature (HPHT) synthesized $h$-BN single crystals often contain impure growth domains, which can potentially hide subtle clues in the 2D atomic layered materials for new discoveries in the physics of 2D materials.
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Two-dimensional (2D) atomic layered semiconductor ( e.
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Partial reduction of N-terminal high spin FeIII sites and electron mediation ability of CN ligands lead to the observation of both an extensive electron transfer and magnetic coupling properties in a precisely atomic layered shell structure of a nanosized [Fe14] complex.
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By characterization of the prepared GO and various control experiments, the higher efficiency of GO than conventional catalysts was attributed to its unique atomic layered structure and suitable acidity.
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Two-dimensional (2D) atomic layered transition metal dichalcogenides are promising candidates for use in next generation optoelectronics.
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The effect of H position in L10FePd magnetic equiatomic layered structure on electron-phonon interactions is studied via ab initio pseudopotentials density functional approach in the general gradient approximation.
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The invention of graphene, as a two-dimensional (2D) atomic layered material, has created enormous scientific revolutions in materials science.
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In this study, we report the effect of mid gap trap states on photocurrent in 10 atomic layered 2H-MoTe2.
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By fine confining of oxygen vacancies (OVs) in atomic layered molybdenum oxide (MoO2), we herein reported a sustainable strategy to tackle the rigorous requirements, thereby figuring out the deep-seated mechanism underlying the increment mechanism.
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High pressure and high temperature (HPHT) synthesized $h$-BN single crystals often contain impure growth domains, which can potentially hide subtle clues in the 2D atomic layered materials for new discoveries in the physics of 2D materials.
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